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Methods of analysis of chloroplast genomes of C3 Kranz type C4 and Single Cell C4 photosynthetic members of Chenopodiaceae

机译:C3Kranz型C4的叶绿体基因组和Chenopodiaceae的单细胞C4光合成员分析方法

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摘要

Methodology with high throughput sequencing complemented with Sanger sequencing of selected loci provided high quality and complete chloroplast genomes of seven species in the family and one species in the closely related Amaranthaceae family, representing C3, Kranz type C4 and single cell C4 (SSC4) photosynthesis six of the eight chloroplast genomes are new, while two are improved versions of previously published genomes. The depth of coverage obtained using high-throughput sequencing complemented with targeted resequencing of certain loci enabled superior resolution of the border junctions, directionality and repeat region sequences. Comparison of the chloroplast genomes with previously sequenced plastid genomes revealed similar genome organization, gene order and content with a few revisions. High-quality complete chloroplast genome sequences resulted in correcting the orientation the LSC region of the published Bienertia sinuspersici chloroplast genome, identification of stop codons in the rpl23 gene in B. sinuspersici and B. cycloptera, and identifying an instance of IR expansion in the Haloxylon ammodendron inverted repeat sequence. The rare observation of a mitochondria-to-chloroplast inter-organellar gene transfer event was identified in family Chenopodiaceae.
机译:具有高通量测序的方法,辅以选定基因座的Sanger测序提供高质量和完整的七种叶绿体基因组,在家庭中的七种物种和一个物种在密切相关的Amarantheae家族中,代表C3,Kranz型C4和单细胞C4(SSC4)光合作用六个在八个叶绿体基因组中是新的,而两个是先前公布的基因组的改进版本。使用高通量测序获得的覆盖深度互补,辅以某些基因座的目标重新排序,使得边界连接,方向性和重复区域序列的卓越分辨率。具有先前测序的塑体基因组的叶绿体基因组的比较显示出类似的基因组组织,基因令和含量及几个修订。高质量的完全叶绿体基因组序列导致校正出版的生物垄窦霉菌基因组的LSC区域,鉴定鼻窦氏菌和B. cycloptera的RPL23基因中的止屠旋钮,并识别Haloxylon中的IR扩张的实例Ammodendron倒置重复序列。在家庭脑内核科氏岩中鉴定了对线粒体至氯化体间细胞内细胞内基因转移事件的罕见观察。

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